论文标题

带有循环光谱的反参考脉冲星信号:系统评估

Deconvolving Pulsar Signals with Cyclic Spectroscopy: A Systematic Evaluation

论文作者

Dolch, Timothy, Stinebring, Daniel R., Jones, Glenn, Zhu, Hengrui, Lynch, Ryan S., Cohen, Tyler, Demorest, Paul B., Lam, Michael T., Levin, Lina, McLaughlin, Maura A., Palliyaguru, Nipuni T.

论文摘要

无线电脉冲星信号因其在离子化星际介质中的传播而显着扰动。除了由于分散剂引起的频率脉冲脉冲时间外,脉冲形状还会被扭曲和移动,并被不均匀的星际等离子体散布,从而影响脉冲到达时间。了解散射影响脉冲星时间的程度对于使用脉冲星时阵列(PTA)的重力波检测很重要,脉冲星时间阵列(PTA)取决于脉冲星作为稳定时钟的可靠性,其不确定性约为100n或更少,超过〜10y或更多。散射可以描述为具有脉冲响应函数的内在脉冲形状的卷积,代表多径传播的效果。在先前的研究中,循环光谱技术已应用于脉冲星信号,以解除从原始发射信号中散射的影响。我们对模拟数据进行了分析,以在表征星际散射和脉冲星信号噪声比的一系列参数上测试反向卷积的质量。我们表明,环状光谱法对高s/n和/或高度散射的脉冲星最有效。我们得出的结论是,循环光谱法可以在散射到PTA中未包括的高度散射脉冲星的远处群体中起重要作用。对于将来的望远镜和当前仪器(例如用超速带宽(UWB)接收器)升级的绿色银行望远镜,环状光谱可能会使PTA质量脉冲星数量增加一倍。

Radio pulsar signals are significantly perturbed by their propagation through the ionized interstellar medium. In addition to the frequency-dependent pulse times of arrival due to dispersion, pulse shapes are also distorted and shifted, having been scattered by the inhomogeneous interstellar plasma, affecting pulse arrival times. Understanding the degree to which scattering affects pulsar timing is important for gravitational wave detection with pulsar timing arrays (PTAs), which depend on the reliability of pulsars as stable clocks with an uncertainty of ~100ns or less over ~10yr or more. Scattering can be described as a convolution of the intrinsic pulse shape with an impulse response function representing the effects of multipath propagation. In previous studies, the technique of cyclic spectroscopy has been applied to pulsar signals to deconvolve the effects of scattering from the original emitted signals. We present an analysis of simulated data to test the quality of deconvolution using cyclic spectroscopy over a range of parameters characterizing interstellar scattering and pulsar signal-to-noise ratio. We show that cyclic spectroscopy is most effective for high-S/N and/or highly scattered pulsars. We conclude that cyclic spectroscopy could play an important role in scattering correction to distant populations of highly scattered pulsars not currently included in PTAs. For future telescopes and for current instruments such as the Green Bank Telescope upgraded with the ultrawide bandwidth (UWB) receiver, cyclic spectroscopy could potentially double the number of PTA-quality pulsars.

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